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US11188994B2 - Display control method, display control device, non-transitory recording medium storing display control program, and display control system for displaying forecasted demand for a vehicle dispatch - Google Patents

Display control method, display control device, non-transitory recording medium storing display control program, and display control system for displaying forecasted demand for a vehicle dispatch
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US11188994B2
US11188994B2US16/600,711US201916600711AUS11188994B2US 11188994 B2US11188994 B2US 11188994B2US 201916600711 AUS201916600711 AUS 201916600711AUS 11188994 B2US11188994 B2US 11188994B2
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demand forecast
display control
forecast information
demand
vehicle
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US20200134766A1 (en
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Daiki KANEICHI
Yuichi Komatsu
Kiichi UETA
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Toyota Motor Corp
Mobility Technologies Co Ltd
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Toyota Motor Corp
JapanTaxi Co Ltd
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Assigned to JapanTaxi Co., Ltd., TOYOTA JIDOSHA KABUSHIKI KAISHAreassignmentJapanTaxi Co., Ltd.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: KOMATSU, YUICHI, UETA, KIICHI, KANEICHI, DAIKI
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Abstract

A display control method includes causing a display control device to perform: a step (a) forecasting a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle; and a step (b) superimposing, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area.

Description

INCORPORATION BY REFERENCE
The disclosure of Japanese Patent Application No. 2018-204815 filed on Oct. 31, 2018 including the specification, drawings and abstract is incorporated herein by reference in its entirety.
BACKGROUND1. Technical Field
The present disclosure relates to a display control method, a display control device, a non-transitory recording medium storing a display control program, and a display control system.
2. Description of Related Art
Japanese Patent Application Publication No. 2009-9282 (JP 2009-9282 A) describes a technique for displaying demand forecast information on taxi dispatch in a mesh format that is set in advance.
SUMMARY
In the technique described in Japanese Patent Application Publication No. 2009-9282 (JP 2009-9282 A), the same time axis is used for all the elements of the displayed mesh and, therefore, the demand forecast information that takes into account the traveling time and the distance from the host vehicle's position to an arbitrary point cannot be displayed. For example, even for a position 100 m ahead of the host vehicle's position, the demand forecast information corresponding to the time that is 30 minutes ahead from the current time is displayed.
The present disclosure provides a display control method, a display control device, a non-transitory recording medium storing a display control program, and a display control system all of which can display demand forecast information that takes into account the traveling time and the distance from the host vehicle's position to an arbitrary point.
A first aspect of the disclosure provides a display control method. The display control method includes causing a display control device to perform: a step (a) forecasting a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle; and a step (b) superimposing, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area.
In the first aspect, the time may be a time at which the host vehicle will arrive at the arbitrary point or in the arbitrary area from a current position of the host vehicle.
In the first aspect, the arbitrary area may be an area included in one of concentric circles centered at the current position of the host vehicle.
In the first aspect, the step (a) may further include calculating first demand forecast information based on a size of a radius of a first concentric circle included in the concentric circles and calculating second demand forecast information based on a size of a radius of a second concentric circle included in the concentric circles, and the step (b) may further include superimposing, on the map screen, the first demand forecast information in a range of a first display area corresponding to the first concentric circle and superimposing, on the map screen, the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
A second aspect of the disclosure provides a display control device. The display control device includes a memory and a processor with hardware, the processor being configured to forecast a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle, and superimpose, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area.
A third aspect of the disclosure provides a non-transitory recording medium storing a display control program, the display control program being configured to cause a display control device to perform a method including: a step (a) forecasting a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle; and a step (b) superimposing, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area.
A fourth aspect of the disclosure provides a display control system. The display control system includes a processor configured to receive a specification of an arbitrary point from an occupant of a vehicle acquire position information including a current position of the vehicle, calculate a distance and a traveling time from the current position of the vehicle to the arbitrary point based on the position information, send a sending request signal to a server outside the vehicle via a communication network, the sending request signal requesting the server to send demand forecast information on an area within a predetermined-distance range including the current position of the vehicle and the arbitrary point, receive, from the server, the demand forecast information for a period up to a predetermined time from a current time, and extract, based on the calculated traveling time, a specific demand forecast information on the arbitrary point; and a display configured to superimpose, on a map screen, the specific demand forecast information on the arbitrary point.
In the fourth aspect, the processor may be configured to set a first concentric circle and a second concentric circle both of which are centered at the current position of the vehicle, calculate first demand forecast information based on a size of a radius of the first concentric circle, and calculate second demand forecast information based on a size of a radius of the second concentric circle, and the display may be configured to superimpose, on the map screen, the first demand forecast information in a range of a first display area corresponding to the first concentric circle, and superimpose, on the map screen, the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
According to the display control method, display control device, non-transitory recording medium storing the display control program, and display control system in the present disclosure, the demand forecast information that takes into account the traveling time and the distance from the host vehicle's position to an arbitrary point can be displayed.
BRIEF DESCRIPTION OF THE DRAWINGS
Features, advantages, and technical and industrial significance of exemplary embodiments will be described below with reference to the accompanying drawings, in which like numerals denote like elements, and wherein:
FIG. 1 is a schematic diagram showing a configuration of a vehicle dispatch system in an embodiment;
FIG. 2 is a block diagram showing a configuration of the server shown inFIG. 1;
FIG. 3 is a block diagram showing a configuration of the vehicle shown inFIG. 1;
FIG. 4 is a flowchart showing a flow of display control processing in the embodiment;
FIG. 5 is a diagram showing an example of the display of demand forecast information; and
FIG. 6 is a diagram showing another example of the display of demand forecast information.
DETAILED DESCRIPTION OF EMBODIMENTS
A vehicle dispatch system in an embodiment will be described below with reference to the drawings.
[Configuration]
First, a configuration of a vehicle dispatch system in the embodiment will be described with reference toFIG. 1 toFIG. 3.FIG. 1 is a block diagram showing a configuration of the vehicle dispatch system in the embodiment.FIG. 2 is a block diagram showing a configuration of aserver2 shown inFIG. 1.FIG. 3 is a block diagram showing a configuration of avehicle4 shown inFIG. 1.
As shown inFIG. 1, a vehicle dispatch system1 in the embodiment is an information processing system. This information processing system provides the drivers of vehicles with the information on the dispatch demand forecast of vehicles, such as taxis (hereinafter referred to as demand forecast information), so that the vehicles can be efficiently dispatched. The vehicle dispatch system1 includes theserver2 and a plurality ofvehicles4 as its main components. The plurality ofvehicles4 are connected to theserver2 via acommunication network3 such as the Internet or a cellular phone network.
As shown inFIG. 2, theserver2 includes a vehicle dispatch history information database (vehicle dispatch history information DB)21, a demand forecast information database (demand forecast information DB)22, acommunication processing unit23, astorage unit24, and acontrol unit25. Theserver2 may be configured by a plurality of computers or may be a cloud server.
The vehicle dispatch history information DB21 stores the vehicle dispatch history information. This vehicle dispatch history information includes the information such as the information on a location where, and a time when, a dispatch request for thevehicle4 was made (for example, latitude/longitude information, mesh information, information on administrative divisions (blocks) such as a town name and an address).
The demand forecast information DB22 stores demand forecast information generated by thecontrol unit25 in a form readable via thecommunication network3.
Thecommunication processing unit23 is configured by a local area network (LAN) interface board, a wireless communication circuit for wireless communication, and the like. Thecommunication processing unit23 controls the processing of information communication with thevehicles4 via thecommunication network3.
Thestorage unit24 is configured by recording media permanently installed in the computer and recording media removable from the computer. The recording media permanently installed in the computer include an erasable programmable ROM (EPROM) and a hard disk drive (HDD). The recording media removable from the computer include a universal serial bus (USB) memory, a flexible disk, a magneto-optical disk, a compact disc read only memory (CD-ROM), a compact disc rewritable (CD-RW), a digital versatile disc (DVD), a Blu-ray (registered trademark) disc (BD), a digital audio tape (DAT), an 8-mm tape, and a memory card. A solid state drive (SSD) can be used as a recording medium removable from the computer or as a recording medium permanently installed in the computer.
Thestorage unit24 stores the operating system, various computer programs, various tables, and various databases. In this embodiment, thestorage unit24 stores ademand forecast program24a, which is a computer program describing a routine for generating demand forecast information, and data such as various types of setting information (not shown) used for generating demand forecast information. Thedemand forecasting program24amay also be provided in a form downloadable via thecommunication network3.
Thecontrol unit25 includes a processor, such as a central processing unit (CPU), a digital signal processor (DSP), or a field-programmable gate array (FPGA), and a memory (main storage unit) including a random access memory (RAM) and a read only memory (ROM) (none shown). Thecontrol unit25 loads a computer program, stored in thestorage unit24, into the work area of the main storage for execution. Through the execution of the computer program, thecontrol unit25 controls the components to implement the function that meets the intended purpose. In this embodiment, thecontrol unit25 executes thedemand forecast program24ato generate the demand forecast information for the period from the current time up to a predetermined time, based on the vehicle dispatch history information stored in the vehicle dispatchhistory information DB21. Thecontrol unit25 may also generate the demand forecast information for the period from the current time up to a predetermined time, using the information other than the vehicle dispatch history information such as the information on the weather and events. Thecontrol unit25 stores the generated demand forecast information in the demandforecast information DB22.
As shown inFIG. 3, thevehicle4 includes a map information database (map information DB)41, adisplay unit42, anoperation input unit43, agyro sensor44, a positioninformation acquisition unit45, acommunication processing unit46, astorage unit47, and acontrol unit48.
Themap information DB41 stores map information. The map information includes the information on the locations and shapes of roads (for example, the number of lanes on a road, types of lanes such as a passing lane and a driving lane), location information on intersections and diverging points, information on rivers, waterways, railway tracks, and information on administrative divisions such as town names and street addresses. Thevehicle4 may also be configured to acquire and use necessary map information via thecommunication network3.
Thedisplay unit42, configured by a display device such as a liquid crystal display device or an organic electro-luminescence (EL) display device, visually displays various types of information in response to a display control signal from thecontrol unit48. Various types of information, though visibly displayed in this embodiment, may be output as a voice message.
Theoperation input unit43 is configured by an operation input device such as a keyboard, a touch panel, a switch, or a microphone. In response to an operation by the driver of thevehicle4, theoperation input unit43 outputs the operation input signal, which indicates the operation content of the driver, to thecontrol unit48.
Thegyro sensor44 acquires the information on the direction of thevehicle4 and outputs the signal, which indicates the acquired direction of thevehicle4, to thecontrol unit48.
The positioninformation acquisition unit45 receives GPS signals to measure the position of thevehicle4 based on the received GPS signals. The GPS signals are the signals delivered from three or more global positioning system (GPS) satellites each of which circles the Earth in an orbit. The positioninformation acquisition unit45 outputs the electrical signal, which indicates the position information on thevehicle4 which has been positioned, to thecontrol unit48.
Thecommunication processing unit46 is configured by a wireless communication circuit and the like for wireless communication. Thecommunication processing unit46 controls the processing of information communication with theserver2 via thecommunication network3.
Thestorage unit47 is configured in the same way as thestorage unit24 of theserver2. Thestorage unit47 stores the operating system, various computer programs, various tables, various databases, and the like. In this embodiment, thestorage unit47 stores adisplay control program47a, which is a computer program describing a routine for controlling the display of various types of information on thedisplay unit42, and data such as various types of setting information (not shown) for controlling the display of various types of information on thedisplay unit42. Thedisplay control program47amay also be provided in a form downloadable via thecommunication network3.
Thecontrol unit48 is configured in the same way as thecontrol unit25 of theserver2. Thecontrol unit48 loads a computer program, stored in thestorage unit47, into the work area of the main storage unit for execution. Through the execution of the computer program, thecontrol unit48 controls the components to implement the function that meets the intended purpose.
In the vehicle dispatch system1 having the configuration described above, thecontrol unit48 of thevehicle4 executes the display control processing described below to display the demand forecast information that takes into account the traveling time and distance from the host vehicle's position to an arbitrary point. The operation of thecontrol unit48 that is performed when executing the display control processing will be described below with reference toFIG. 4 toFIG. 6.
[Display Control Processing]
FIG. 4 is a flowchart showing the flow of display control processing in the embodiment.FIG. 5 andFIG. 6 are diagrams showing examples in which demand forecast information is displayed.
The processing of the flowchart shown inFIG. 4 is started when the driver of thevehicle4 performs an operation on theoperation input unit43 to instruct thedisplay unit42 to display the demand forecast information. When the driver performs such an input operation, the display control processing proceeds to step S1. The display control processing is repeatedly performed at predetermined periodic control intervals until an instruction to end the display control processing is received. The function of thecontrol unit48 described below is implemented when thecontrol unit48 executes thedisplay control program47a.
In the processing in step S1, thecontrol unit48 uses the positioninformation acquisition unit45 to acquire the host vehicle's position information. After the host vehicle's position information is acquired, the processing in step S1 is completed and the display control processing proceeds to step S2.
In the processing in step S2, thecontrol unit48 calculates the distance and the traveling time from the host vehicle's current position to an arbitrary point based on the position information acquired in the processing in step S1. An arbitrary point is, for example, a point specified by the driver via theoperation input unit43 or a point within a predetermined distance from the host vehicle. The arbitrary point can be changed to a district town or a street address. The distance and the traveling time to the arbitrary point can be calculated based on the map information stored in themap information DB41 and the congestion information around the host vehicle acquired via thecommunication network3. After calculating the distance and the traveling time to an arbitrary point in this way, the processing in step S2 is completed and the display control processing proceeds to step S3.
In the processing in step S3, thecontrol unit48 first sends the sending request signal to theserver2 via thecommunication network3. This sending request signal requests theserver2 to send the demand forecast information on the area within the predetermined-distance range including the host vehicle's current position and the arbitrary point. Next, in response to this sending request signal, thecontrol unit25 of theserver2 reads the demand forecast information on the area within the predetermined-distance range, including the host vehicle's current position and the arbitrary point, from the demandforecast information DB22 for the period up to the predetermined time ahead from the current time. Next, thecontrol unit25 of theserver2 sends the demand forecast information for the period up to the predetermined time ahead from the current time, which has been has been read, to thevehicle4 via thecommunication network3. When the demand forecast information for the period up to the predetermined time ahead from the current time is received, thecontrol unit48 extracts demand forecast information at the arbitrary point from the received demand forecast information while taking into account the traveling time to the arbitrary point calculated in the processing in step S2. For example, when the traveling time to the arbitrary point is five minutes, thecontrol unit48 extracts the demand forecast information at the arbitrary point corresponding to the time that is five minutes ahead from the current time. After extracting the demand forecast information on the arbitrary point in this way, the processing in step S3 is completed and the display control processing proceeds to the processing in step S4.
In the processing in step S4, thecontrol unit48 reads the map information on the area including the host vehicle's current position and the arbitrary point from themap information DB41 and displays the map information, which has been read, on thedisplay unit42 as the map screen. In addition, thecontrol unit48 superimposes the direction and the position of the host vehicle on the corresponding position on the map screen on the basis of the information acquired from thegyro sensor44 and the positioninformation acquisition unit45. After that, thecontrol unit48 superimposes the demand forecast information at the arbitrary point on the corresponding position on the map screen. This demand forecast information is the information extracted in the processing in step S3 while taking into account the traveling time to the arbitrary point. The processing described above allows the driver to confirm the demand forecast information that is determined while taking into account the traveling time from the host vehicle's current position to the arbitrary point, making it possible to dispatch the vehicle more efficiently.
As shown inFIG. 5, thecontrol unit48 may freely set the radiuses (distances) of the concentric circles R1 and R2 centered at the host vehicle's current position, calculate the traveling time of the host vehicle from the host vehicle's current position for each of the radius sizes that are set, extract demand forecast information corresponding to the time after the elapse of the traveling time, and display the extracted demand forecast information in the area of each concentric circle. The concentric circles R1 and R2 may be displayed on thedisplay unit42. In the example shown inFIG. 5, the radiuses of the concentric circle R1 and concentric circle R2 are set to 5 km and 10 km, respectively, and the traveling times from the current position of thevehicle4 to the area in the range within 5 km and 10 km are calculated as 5 minutes and 30 minutes, respectively. Therefore, thecontrol unit48 displays the demand forecast information corresponding to the time that is five minutes ahead from the current time in the range of the concentric circle R1, and the demand forecast information corresponding to the time that is 30 minutes ahead from the current time in the range of the concentric circle R2 excluding the range of the concentric circle R1. That is, when the radius of the concentric circle R2 is larger than that of the concentric circle R1, the first demand forecast information is displayed in the range of the concentric circle R1, and the second demand forecast information in the range of the concentric circle R2 excluding the range of the concentric circle R1. Note that only one circle may be set instead of concentric circles or three or more concentric circles may be set.
As shown inFIG. 6, thecontrol unit48 may preferably display an enlargement/reduction icon51 for enlarging/reducing the map screen on thedisplay unit42. This allows the driver to operate anoperation button52 of the enlargement/reduction icon51 via theoperation input unit43 to give an instruction to enlarge/reduce the map screen. Thecontrol unit48 changes the display range of the demand forecast information according to the enlargement ratio and the reduction ratio specified by the driver and superimposes the display range on the map screen according to this ratio. On the map screen shown inFIG. 6, the vehicle icon PA, which indicates the direction and position of the host vehicle, and the demand forecast icons PB1 to PB3, each of which indicates the required number ofvehicles4 at each address, are displayed.
In addition, as shown inFIG. 6, thecontrol unit48 may preferably display atime setting icon53, which is used for setting the time of demand forecasting, on thedisplay unit42. This allows the driver to operate thetime setting icon53 via theoperation input unit43 to display the demand forecast information at an arbitrary time. From the demand forecast information for the period up to a predetermined time that has been acquired from theserver2, thecontrol unit48 extracts the demand forecast information at a driver-specified arbitrary time. Then, thecontrol unit48 superimposes the extracted demand forecast information on the map screen. Thecontrol unit48 may also acquire the data (vehicle dispatch history information) on the past vehicle dispatch results (last year/last month/last week/same day/same time, etc.) from theserver2 according to a driver's operation and display the acquired data. After the information described above is displayed in this way, the processing in step S4 is completed and a series of display control processing is terminated.
Although the embodiment has been described above, further effects and modifications can be easily derived by those skilled in the art. A broader aspect of the present disclosure is not limited to the specific details and representative embodiments shown and described above. Accordingly, various changes may be made without departing from the spirit or the scope of the general inventive concept as defined by the appended claims and their equivalents.

Claims (4)

What is claimed is:
1. A display control method comprising
forecasting, by a display control device, a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle, the time being a time at which the host vehicle will arrive at the arbitrary point or in the arbitrary area from a current position of the host vehicle, the arbitrary area being an area included in one of a plurality of concentric circles centered at a current position of the host vehicle, the forecasting the demand for the vehicle dispatch including:
calculating, by the display control device, first demand forecast information based on a size of a first radius of a first concentric circle included in the plurality of concentric circles, and
calculating, by the display control device, second demand forecast information based on a size of a second radius of a second concentric circle included in the plurality of concentric circles, the second radius being larger than the first radius; and
superimposing, by the display control device at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or—the arbitrary area at the time specified by the host vehicle, the superimposing including:
superimposing, by the display control device on the map screen, the first demand forecast information in a range of a first display area corresponding to the first concentric circle, and
superimposing, simultaneously with the first demand forecast by the display control device on the map screen, the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
2. A display control device comprising:
a memory; and
a processor with hardware, the processor being configured to:
forecast a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle, the time being a time at which the host vehicle will arrive at the arbitrary point or in the arbitrary area from a current position of the host vehicle, the arbitrary area being an area included in one of a plurality of concentric circles centered at a current position of the host vehicle, the forecast of the demand including the processor being further configured to:
calculate first demand forecast information based on a size of a first radius of a first concentric circle included in the plurality of concentric circles, and
calculate second demand forecast information based on a size of a second radius of a second concentric circle included in the plurality of concentric circles, the second radius being larger than the first radius, and
superimpose, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area at the time specified by the host vehicle, the superimposition of the information about the forecasted demand including the processor being further configured to:
superimpose the first demand forecast information in a range of a first display area corresponding to the first concentric circle, and
superimpose, simultaneously with the first demand forecast, the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
3. A non-transitory recording medium storing a display control program, the display control program being configured to cause a display control device to perform a method comprising:
forecasting a demand for a vehicle dispatch at an arbitrary point or in an arbitrary area at a time specified by a host vehicle, the time being a time at which the host vehicle will arrive at the arbitrary point or in the arbitrary area from a current position of the host vehicle, the arbitrary area being an area included in one of a plurality of concentric circles centered at a current position of the host vehicle, the forecasting including:
calculating first demand forecast information based on a size of a first radius of a first concentric circle included in the plurality of concentric circles, and
calculating second demand forecast information based on a size of a second radius of a second concentric circle included in the plurality of concentric circles, the second radius being larger than the first radius; and
superimposing, at a position on a map screen, information about the forecasted demand, the position corresponding to the arbitrary point or the arbitrary area at the time specified by the host vehicle, the superimposing including:
superimposing the first demand forecast information in a range of a first display area corresponding to the first concentric circle, and
superimposing the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
4. A display control system comprising:
a processor configured to:
receive a specification of an arbitrary point from an occupant of a vehicle,
acquire position information including a current position of the vehicle,
calculate a distance and a traveling time from the current position of the vehicle to the arbitrary point based on the position information,
send a sending request signal to a server outside the vehicle via a communication network, the sending request signal requesting the server to send demand forecast information on an area within a predetermined-distance range including the current position of the vehicle and the arbitrary point, the demand forecast information corresponding to a demand for vehicle dispatch,
receive, from the server, the demand forecast information for a period up to a predetermined time from a current time, and
extract, based on the calculated traveling time, specific demand forecast information on the arbitrary point,
set a first concentric circle and a second concentric circle both of which are centered at the current position of the vehicle,
calculate, based on the specific demand forecast information, first demand forecast information based on a size of a first radius of the first concentric circle, and
calculate, based on the specific demand forecast information, second demand forecast information based on a size of a second radius of the second concentric circle, the second radius being larger than the first radius; and
a display configured to superimpose, on a map screen, the specific demand forecast information on the arbitrary point, the superimposition of the specific demand forecast information including the display being configured to:
superimpose, on the map screen, the first demand forecast information in a range of a first display area corresponding to the first concentric circle, and
superimpose, simultaneously with the first demand forecast information on the map screen, the second demand forecast information in a range of a second display area corresponding to the second concentric circle excluding the range of the first display area.
US16/600,7112018-10-312019-10-14Display control method, display control device, non-transitory recording medium storing display control program, and display control system for displaying forecasted demand for a vehicle dispatchActiveUS11188994B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
USD1023055S1 (en)2022-01-202024-04-16Waymo LlcDisplay screen or portion thereof with graphical user interface

Citations (22)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6701300B1 (en)*1998-10-222004-03-02Honda Giken Kogyo Kabushiki KaishaVehicle allocation system
JP2006162323A (en)2004-12-032006-06-22Xanavi Informatics CorpTraffic information display method of navigation system
JP2009009282A (en)2007-06-272009-01-15Fujitsu Ten LtdDemand information transmission device
US7702570B2 (en)*2007-03-152010-04-20Bgc Partners, Inc.System and method for providing an operator interface for a radar display of market data
US20120265580A1 (en)*2009-11-242012-10-18Ntt Docomo, Inc.Demand prediction device and demand prediction method
US8315905B1 (en)*2006-03-302012-11-20Navadi, Inc.Location based advertising systems
US20130144831A1 (en)*2011-12-052013-06-06FasterFare, LLCPredicting Taxi Utilization Information
US20140330513A1 (en)*2013-05-012014-11-06Roger A. FrattiLinear and Radial Legend Based on Motion
US20150039391A1 (en)*2011-08-162015-02-05Better Place GmbHEstimation and management of loads in electric vehicle networks
KR101490363B1 (en)2014-10-232015-02-06이영우System for providing real time taxi information
US20160364669A1 (en)*2015-06-122016-12-15Sap SeDynamic location recommendation for public service vehicles
US20180308366A1 (en)*2017-04-252018-10-25Uber Technologies, Inc.Efficient vtol resource management in an aviation transport network
US20180330621A1 (en)*2017-05-112018-11-15Uber Technologies, Inc.Network computer system to position service providers using provisioning level determinations
US20190019407A1 (en)*2017-07-142019-01-17Omid B. NakhjavaniReal time parking lot analysis and management
US20190197798A1 (en)*2017-12-222019-06-27Lyft, Inc.Fleet Maintenance Management for Autonomous Vehicles
US20190196512A1 (en)*2017-12-212019-06-27Wing Aviation LlcAnticipatory Dispatch of UAVs to Pre-staging Locations
US20190266625A1 (en)*2017-04-142019-08-29Ntt Docomo, Inc.Demand forecasting device
US20190295014A1 (en)*2018-03-262019-09-26GM Global Technology Operations LLCSystem and method to distribute and execute rideshare tasks
US10474978B2 (en)*2015-04-282019-11-12Adp, LlcSystems and methods for commute analysis and modeling
US10572964B2 (en)*2014-08-212020-02-25Uber Technologies, Inc.Arranging a transport service for a user based on the estimated time of arrival of the user
US20200160709A1 (en)*2017-07-262020-05-21Via Transportation, Inc.Routing both autonomous and non-autonomous vehicles
US10672114B1 (en)*2017-10-272020-06-02Liberty Mutual Insurance CompanyComputationally efficient distance-based score approximations

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPH09282594A (en)*1996-04-121997-10-31Fujitsu General Ltd Vehicle position information collection system
JP2005134429A (en)*2003-10-282005-05-26Pioneer Electronic Corp Traffic condition notifying device, system thereof, method thereof, program thereof, and recording medium recording the program
WO2010123075A1 (en)2009-04-232010-10-28株式会社エヌ・ティ・ティ・ドコモServer for supporting the prediction of demand for transportation means, system for supplying transportation means, and method for generating data predicting demand for transportation means
JP4990421B2 (en)*2010-03-162012-08-01三菱電機株式会社 Road-vehicle cooperative safe driving support device

Patent Citations (22)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6701300B1 (en)*1998-10-222004-03-02Honda Giken Kogyo Kabushiki KaishaVehicle allocation system
JP2006162323A (en)2004-12-032006-06-22Xanavi Informatics CorpTraffic information display method of navigation system
US8315905B1 (en)*2006-03-302012-11-20Navadi, Inc.Location based advertising systems
US7702570B2 (en)*2007-03-152010-04-20Bgc Partners, Inc.System and method for providing an operator interface for a radar display of market data
JP2009009282A (en)2007-06-272009-01-15Fujitsu Ten LtdDemand information transmission device
US20120265580A1 (en)*2009-11-242012-10-18Ntt Docomo, Inc.Demand prediction device and demand prediction method
US20150039391A1 (en)*2011-08-162015-02-05Better Place GmbHEstimation and management of loads in electric vehicle networks
US20130144831A1 (en)*2011-12-052013-06-06FasterFare, LLCPredicting Taxi Utilization Information
US20140330513A1 (en)*2013-05-012014-11-06Roger A. FrattiLinear and Radial Legend Based on Motion
US10572964B2 (en)*2014-08-212020-02-25Uber Technologies, Inc.Arranging a transport service for a user based on the estimated time of arrival of the user
KR101490363B1 (en)2014-10-232015-02-06이영우System for providing real time taxi information
US10474978B2 (en)*2015-04-282019-11-12Adp, LlcSystems and methods for commute analysis and modeling
US20160364669A1 (en)*2015-06-122016-12-15Sap SeDynamic location recommendation for public service vehicles
US20190266625A1 (en)*2017-04-142019-08-29Ntt Docomo, Inc.Demand forecasting device
US20180308366A1 (en)*2017-04-252018-10-25Uber Technologies, Inc.Efficient vtol resource management in an aviation transport network
US20180330621A1 (en)*2017-05-112018-11-15Uber Technologies, Inc.Network computer system to position service providers using provisioning level determinations
US20190019407A1 (en)*2017-07-142019-01-17Omid B. NakhjavaniReal time parking lot analysis and management
US20200160709A1 (en)*2017-07-262020-05-21Via Transportation, Inc.Routing both autonomous and non-autonomous vehicles
US10672114B1 (en)*2017-10-272020-06-02Liberty Mutual Insurance CompanyComputationally efficient distance-based score approximations
US20190196512A1 (en)*2017-12-212019-06-27Wing Aviation LlcAnticipatory Dispatch of UAVs to Pre-staging Locations
US20190197798A1 (en)*2017-12-222019-06-27Lyft, Inc.Fleet Maintenance Management for Autonomous Vehicles
US20190295014A1 (en)*2018-03-262019-09-26GM Global Technology Operations LLCSystem and method to distribute and execute rideshare tasks

Cited By (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
USD1023055S1 (en)2022-01-202024-04-16Waymo LlcDisplay screen or portion thereof with graphical user interface

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